首页> 外文期刊>Estuarine Coastal and Shelf Science >River plume and sediment transport seasonality in a non-tidal semi-enclosed brackish water estuary of the Baltic Sea
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River plume and sediment transport seasonality in a non-tidal semi-enclosed brackish water estuary of the Baltic Sea

机译:河流羽毛和沉积物运输季节性在波罗的海的非潮汐半封闭咸水河口

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摘要

Our study aims to determine the development of sediment-rich freshwater plumes in a non-tidal brackish water-dominated (salinity 6) estuary in the Halikonlahti Bay, Northern Baltic Sea. We studied three seasons with different wind conditions and discharges: two open water periods, one with low (similar to 0.2 m(3)/s) and one with high (31-40 m(3)/s) river discharges, and one ice-covered period with high (28-40 m(3)/s) river discharge. To conduct our analyses, we measured suspended sediment concentration (SSC), turbidity, salinity and temperature of bottom and surface waters together with current measurements along the estuary. Water samples were collected with LIMNOS water sampler and current measurements were done with acoustic Doppler current profiler. The results indicate that river plume develops under high river discharge, while during low river discharge the plume is very limited in extent. In open water conditions, SSC increased approximately ten-fold in the estuary head, with increased discharge from 0.2 m(3)/s to 31 m(3)/s. Buoyant plumes developed in both open channel and ice-cover conditions during high river discharge periods even in a weakly stratified environment, where the salinity difference was less than five over the entire water column. Unlike salinity, small temperature differences between river and seawater did not contribute the development of buoyant sediment plume. Weak stratification together with reduced wind-induced mixing was found to limit the sediment mixing between fresh surface and saline (similar to 5) bottom layers in both ice-covered and open water conditions. For example, even 2-5 times higher SSCs were found at surface waters compared to bottom waters over a shallow (similar to 4 m) water column. Wind and river discharge induced estuarine currents were found. Inverse estuary circulation developed under the conditions of low river discharge and inshore directed wind. High river discharge together with salinity stratification formed a positive estuarine circulation pattern, with surface outflow and bottom inflow.
机译:我们的研究旨在确定北波罗的海北部哈利尼尔拉希蒂湾的非潮汐咸泥水栓(盐度<6)河口中富含肥沙淡水羽毛的发展。我们研究了三个季节,有不同的风力条件和放电:两个开放式水位,一个低(类似于0.2米(3)/ s),一个高(31-40米(3)/ s)河流排放,一个冰盖覆盖的周期高(28-40米(3)/ s)河流放电。为了进行我们的分析,我们测量悬浮的沉积物浓度(SSC),底部和表面水的温度以及沿着浅水的电流测量。用Limnos水采样器收集水样,并用声学多普勒电流分析仪进行电流测量。结果表明,河流在高河流出院下发育,而在低河流下,羽流在范围内非常有限。在开放水条件下,SSC在河口头部增加了大约十倍,从0.2米(3)/ s至31米(3)/ s增加。在高河流放电期间在开放通道和冰覆盖条件下开发的浮力羽毛即使在弱分层的环境中,盐度差异小于整个水柱上的5个。与盐度不同,河流与海水之间的小温差没有促进浮力沉积羽的发展。发现弱分层与减少的风诱导的混合一起限制了在冰盖和开放水条件下的新鲜表面和盐水(类似于5)底层之间的沉积物混合。例如,与浅(类似于4米)水柱的底部水相比,在表面水中发现甚至2-5倍的SSCs。发现风和河流放电诱导河口电流。逆口循环在低河流排放和居住的风的条件下开发。高河流与盐度分层一起形成阳性偏卤素循环图案,具有表面流出和底部流入。

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